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个人简介
Expertise lies at the frontier between materials science and physical/chemical properties of liquid electrolytes. My research program applies these principles to develop efficient electrochemical energy storage and conversion devices such as secondary batteries and water electrolyzers. In recent years, our science has identified new strategies to control the liquid water environment at the nanoscale. We reported the concept of ‘nanoreactors’, in which water is confined in an aprotic solvent containing alkali salts to impart new properties, and used them to tune the reactivity of water at electrified interfaces in support of better aqueous batteries (Nature Catalysis 2020, EES 2018). As a second example, we have reported a new class of reversible Li+
intercalation compounds based on transition metal halides. This was made possible by fostering our knowledge in superconcentrated electrolytes to stabilize these halides previously believed to be too soluble in classical battery electrolytes (Nature Materials 2021). Other topics include the development of water splitting catalysts that exploit reactivity of oxygen ligands (Nature Energy 2016, Nature Communications 2020).
intercalation compounds based on transition metal halides. This was made possible by fostering our knowledge in superconcentrated electrolytes to stabilize these halides previously believed to be too soluble in classical battery electrolytes (Nature Materials 2021). Other topics include the development of water splitting catalysts that exploit reactivity of oxygen ligands (Nature Energy 2016, Nature Communications 2020).
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F. G. Capone, J. Sottmann,V. Meunier, L. Perez Ramirez,A. Grimaud, A. Iadecola, M. Scardamaglia,J. -p. Rueff,R. Dedryvere
ENERGY & ENVIRONMENTAL SCIENCEno. 4 (2024): 1509-1519
Journal of the American Chemical Societyno. 25 (2024): 17495-17507
Jason Richard, Navid Solati,Arvinder Singh,Valentin Meunier, Yoko Toda,Alexis Grimaud, Arnaud Perez,Christel Laberty-Robert
ACS Applied Energy Materials (2024)
Nature nanotechnologyno. 10 (2023): 1185-1194
Chemical communications (Cambridge, England)no. 82 (2023): 12266-12269
Meeting abstractsno. 1 (2023): 460-460
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